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$Fe^{3+}$ ions in alkali lead tetraborate glasses-an electron paramagnetic resonance and optical study

机译:四硼酸铅玻璃中的$ Fe ^ {3 +} $离子-电子顺磁共振和光学研究

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摘要

Glass systems of composition $90R_{2}B_{4}O_{7} + 9PbO + 1Fe_{2}O_{3}$ (R = Li, Na and K) and $90Li_{2}B_{4}O_{7} + (10-x)PbO + xFe_{2}O_{3}$ (x = 0.5, 1, 3, 4, 5, 7and 9 mol%) have been investigated by means of electron paramagnetic resonance (EPR) and optical absorption techniques. The EPR spectra exhibit three resonance signals at g=6.0, 4.2 and 2.0. The resonances at g=6.0 and 4.2 are attributed to $Fe^{3+}$ ions in rhombic and axialsymmetry sites, respectively. The g=2.0 resonance signal is due to two or more $Fe^{3+}$ ions coupled together with dipolar interaction. The EPR spectra of 1 mol% of $Fe_{2}O_{3}$ doped in lithium lead tetraborate glass samples have been studied at different temperatures (123-433 K).The intensity of g=4.2 resonance signal decreases and the intensity of g=2.0 resonance signal increases with the increase of temperature. The line widths are found to be independent of temperature. The EPR spectra exhibit a marked concentration dependence on iron content. Adecrease in intensity for the resonance signal at g=4.2 with increase in iron content for more than 4 mol% has been observed in lithium lead tetraborate glass samples and this has been attributed to the formation of $Fe^{3+}$ ion clusters in the glass samples. The paramagnetic susceptibility (chi) is calculated from the EPR data at various temperatures and the Curie constant (C) has been evaluated from 1/chi versus T graph. The optical absorption spectrum of $Fe^{3+}$ ions in lithium lead tetraborate glasses exhibits three bands characteristic of $Fe^{3+}$ ions in an octahedral symmetry. The crystal field parameter Dq and the Racah interelectronic repulsion parameters B and C have also been evaluated. The value ofinterelectronic repulsion parameter B (825 $cm^{-1}$ obtained in the present work suggests that the bonding is moderately covalent.
机译:组成为$ 90R_ {2} B_ {4} O_ {7} + 9PbO + 1Fe_ {2} O_ {3} $(R = Li,Na和K)和$ 90Li_ {2} B_ {4} O_ {通过电子顺磁共振(EPR)研究了7} +(10-x)PbO + xFe_ {2} O_ {3} $(x = 0.5、1、3、4、5、7和9 mol%),并且光学吸收技术。 EPR谱在g = 6.0、4.2和2.0时显示三个共振信号。 g = 6.0和4.2时的共振分别归因于菱形和轴对称位点处的Fe ^ {3 +} $离子。 g = 2.0的共振信号是由于两个或多个$ Fe ^ {3 +} $离子以偶极相互作用耦合在一起。研究了在不同温度(123-433 K)下掺杂四硼酸锂铅玻璃样品中1 mol%的$ Fe_ {2} O_ {3} $的EPR谱.g = 4.2共振信号的强度降低且强度降低g = 2.0的谐振信号随温度的升高而增加。发现线宽与温度无关。 EPR光谱对铁含量表现出明显的浓度依赖性。在四硼酸锂铅玻璃样品中,观察到在g = 4.2时共振信号强度随铁含量增加超过4 mol%而降低,这归因于$ Fe ^ {3 +} $离子簇的形成在玻璃样品中。根据不同温度下的EPR数据计算出顺磁化率( chi),并根据1 / chi与T的关系图评估了居里常数(C)。四硼酸锂铅玻璃中$ Fe ^ {3 +} $离子的光吸收光谱以八面体对称性表现出$ Fe ^ {3 +} $离子的三个谱带。还评估了晶体场参数Dq和Racah电子互斥参数B和C。在本工作中获得的电子互斥参数B的值(825 $ cm ^ {-1} $)表明该键为中等共价键。

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